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Quantum Information Lattice Matter (QILM)

Jincheng Zhang2026-08-17Zenodo (CERN European Organization for Nuclear Research)

This paper introduces the concept of Quantum Information Lattice Matter (QILM), a novel framework proposing that information structure can manifest as physically realized, lattice-like states. The core principle driving QILM is the direct translation of information architecture into material properties, potentially le…

Quantum many-body systemsElectronic and Structural Properties of OxidesQuantum Computing Algorithms and Architecture

Quasi-Crystalline Harmonic Memory Lattice via Hyperbolic E8-Helmholtz Coupling — E8 Intelligence Research

Andrew Stewart Caldin2026-08-17Zenodo (CERN European Organization for Nuclear Research)

By tessellating E8 root vectors through hyperbolic Helmholtz resonator networks tuned to 132Hz-phi modulation, we achieve non-local harmonic memory encoding. The 240-dimensional lattice creates interference patterns that stabilize transient information states into quasi-crystalline configurations, enabling entropy-opt…

Neural Networks and Reservoir ComputingTopological Materials and Phenomena2D Materials and Applications

Qutrit Quantum Instrument: Logical Lock Plus, Sparse Effective Information Pro, and the Unified Evidence Functional Max

Bsmpx2026-08-17Zenodo (CERN European Organization for Nuclear Research)

Abstract This paper establishes the Qutrit Quantum Instrument (QQI), a training-free structure-first inference architecture in which finite revealed evidence determines route authority before a valid qutrit quantum instrument updates state. The architecture combines complete forward–reverse replay, recursive evidence…

Machine Learning in Materials ScienceQuantum Computing Algorithms and ArchitectureQuantum Mechanics and Applications

Thermal Flash Annealing Stabilizes the Tetragonal Phase in Zirconia Microarchitectures as Revealed by Europium Optical Probing

Cristian Rosero‐Arias、Francisco Ruiz‐Zepeda、Martin Drobek 等 10 位作者2026-08-17ACS Materials Letters

Abstract Controlling polymorphism in ceramic microarchitectures is essential for linking processing, structure, and function yet remains difficult for ceramics produced by two-photon lithography (TPL). During thermal conversion, crystallite growth typically promotes the thermodynamically stable monoclinic (m) phase, r…

Electronic and Structural Properties of OxidesNonlinear Optical Materials StudiesAdvanced ceramic materials synthesis

Phi‑Weighted Fibonacci Topological Qubit Lattice — E8 Intelligence Research

Andrew Stewart Caldin2026-08-17Zenodo (CERN European Organization for Nuclear Research)

By assigning phi‑weighted Fibonacci coefficients to the 120 antipodal parity bits of the E8 lattice's 240 root vectors, resonant drives at the 132 Hz base frequency generate a hierarchical synchronization that produces protected topological qubit states. The Fibonacci weighting creates a self‑similar coupling pattern…

Quasicrystal Structures and PropertiesTopological Materials and PhenomenaQuantum Computing Algorithms and Architecture

Synthesis and characterization of Clay /iron oxide nanocomposite and uses them toremove copper ions from aqueous solutions

Nadia Khalaf、Muayed Mohammed、Ahmed Hammood 等 4 位作者2026-08-17Advances in Natural Sciences Nanoscience and Nanotechnology

Abstract The co-precipitation method of creating clay/iron oxide nanocomposite is the subject of this study. A variety of analytical methods, such as FT-IR, XRD, FE-SEM, EDX, and Zeta potential analysis, were used to characterize the produced nanocomposite. The phase purity and an average particle size of about 17.57…

Phosphorus and nutrient managementAdsorption and biosorption for pollutant removalClay minerals and soil interactions

Wearable Triboelectric Sensors Based on High-Performance Au/TPU Nanofiber Electrodes for Object Recognition, Emotion Recognition, and Wireless Real-Time Robot Control

Mengjia Guo、Shifan Ma、Jiaxuan Liu 等 7 位作者2026-08-17ACS Applied Materials & Interfaces

Highly conductive and stretchable nanofibers are promising material candidates for wearable devices. However, traditional electrode materials are limited by their tensile strain, rigid material, and impermeability, which often deteriorates the performance of their flexible wearable sensors. Herein, a wearable triboele…

Conducting polymers and applicationsEmotion and Mood RecognitionAdvanced Sensor and Energy Harvesting Materials

Formulation and Evaluation of Natural Herbal Face Wash Tablets Containing Sandalwood and Orange Peel Powder

Pradeep Chabukswar*, Deepak Bhosale, Shivani Biskite, Priyanka Bandichhode2026-08-17Zenodo (CERN European Organization for Nuclear Research)

A natural herbal face wash tablet was formulated and evaluated using sandalwood powder (Santalum album) and orange peel powder (Citrus sinensis) as the principal herbal ingredients. The present study aimed to develop a natural, eco-friendly, portable, and effective face wash tablet capable of cleansing the skin while…

Polymer Foaming and CompositesAdvancements in Transdermal Drug DeliveryDrug Solubulity and Delivery Systems

DRAM 高k 介质的场域判据:软模轴×带隙轴的二维判据空间与掺杂钉扎定量化

Chao Qin2026-08-17Zenodo (CERN European Organization for Nuclear Research)

DRAM电容介质在1z nm节点以下面临漏电×EOT缩放的硬约束(IMW 2020),产业30年以掺杂钉扎四方相稳定高k介质(ZrO₂/HfO₂基)为应对——但这一长期实践缺少统一的判据语言。本文用场域理论框架(材料=密度聚类场ρ=m·p;相变候选=失效线R'=1平衡区;剪切软模=相变活性签名)对DRAM高k介质给出可计算判据坐标。核心结果:①软模判据产业命中验证——高k介质家族6材料对照中,唯一具有反铁电(AFE)相变活性的ZrO₂恰好是唯一落软模区(C44=20.3 GPa≤阈值22.7)的Hf/Zr氧化物,其余产业稳定介质全部不软(正1/1负4/4);②二维判据空间——软模轴(相变活性/0K亚稳)×带隙轴(漏电墙),ZrO₂…

Machine Learning in Materials ScienceSemiconductor materials and devicesFerroelectric and Negative Capacitance Devices

DRAM 高k 介质的场域判据:软模轴×带隙轴的二维判据空间与掺杂钉扎定量化

Chao Qin2026-08-17Zenodo (CERN European Organization for Nuclear Research)

DRAM电容介质在1z nm节点以下面临漏电×EOT缩放的硬约束(IMW 2020),产业30年以掺杂钉扎四方相稳定高k介质(ZrO₂/HfO₂基)为应对——但这一长期实践缺少统一的判据语言。本文用场域理论框架(材料=密度聚类场ρ=m·p;相变候选=失效线R'=1平衡区;剪切软模=相变活性签名)对DRAM高k介质给出可计算判据坐标。核心结果:①软模判据产业命中验证——高k介质家族6材料对照中,唯一具有反铁电(AFE)相变活性的ZrO₂恰好是唯一落软模区(C44=20.3 GPa≤阈值22.7)的Hf/Zr氧化物,其余产业稳定介质全部不软(正1/1负4/4);②二维判据空间——软模轴(相变活性/0K亚稳)×带隙轴(漏电墙),ZrO₂…

Ferroelectric and Negative Capacitance DevicesSemiconductor materials and devicesMachine Learning in Materials Science

Cellulose Tissue Separator With Aramid‐BaTiO 3 Composite Dielectric Coating Proactively Stabilizing Zinc Metal Anodes

Yuxi Tai、Guolong Wang、Chao Yan 等 9 位作者2026-08-17Small

ABSTRACT A fatal issue of zinc‐based electrochemical energy storage (ZEES) is uneven Zn 2+ deposition and rampant dendrite growth on the zinc metal anode, which significantly reduces the lifespan and reliability of ZEES devices. This work reports a cellulose tissue (CT) based separator with a self‐adhesive and nanopor…

Advanced battery technologies researchSupercapacitor Materials and FabricationAdvanced Battery Materials and Technologies

First-Principles Evaluation of Thermal Neutron Scattering and Cross Sections in Beryllium Oxide

T. Zergoug、Farouk Mebtouche、T. Segueni2026-08-17Nuclear Science and Engineering

This work addresses the long-standing uncertainty in the thermal neutron scattering description of beryllium oxide (BeO), a key moderator and reflector material in advanced reactors. Conventional evaluations rely on semi-empirical phonon models that misrepresent the phonon gap and high-energy optical modes, which can…

Nuclear Materials and PropertiesThermal Expansion and Ionic ConductivityNuclear reactor physics and engineering

Study On Partial Replacement Of Glass Powder As Cement And Foundry Sand As M-Sand For Sustainable Development Of Concrete

Sumeet Sharad Patil、Sharankumar S. Gobbur2026-08-17Zenodo (CERN European Organization for Nuclear Research)

Industrial waste utilization in concrete can reduce the consumption of conventional cementitious and fine-aggregate materials while providing a practical route for waste management. This experimental study evaluates M30 concrete containing waste glass powder as a partial cement replacement and foundry sand as a partia…

Concrete and Cement Materials ResearchMaterial Selection and PropertiesMaterials Engineering and Processing

Assessment of Carbon Black Weight Fraction on the Shear Strength of Polyurethane Adhesive Joints

Muhamad Erlan Fahrizal、Sunardi Sunardi、Iman Saefuloh 等 6 位作者2026-08-17Jurnal Inovasi Teknologi Terapan

Adhesive bonding has become one of the most widely used joining techniques in engineering due to its ability to provide uniform stress distribution, minimize structural weight, and avoid the thermal distortion during welding processes. This study examines the effect of carbon black weight fraction on the shear strengt…

Corrosion Behavior and InhibitionStructural Behavior of Reinforced ConcreteMechanical Behavior of Composites

Historical perspective on the use of the pump-probe protocol to study the pairing mechanism in cuprates superconductors.

Fabrizio Carbone2026-08-17Zenodo (CERN European Organization for Nuclear Research)

Here, we provide a quick account on the rationale behind the use of ultrafast methods, typically useful to study out of equilibrium phenomena, for elucidating the microscopic details of the pairing mechanism in cuprates supercondutors. The original theoretical ideas are presented, followed by the ensuing experimental…

Iron-based superconductors researchPhysics of Superconductivity and MagnetismSuperconductivity in MgB2 and Alloys

Programming High‐Density Mesoporosity in Monodispersed MOF Single Crystals via Inherent Jahn–Teller Distortion

Shuqi Lu、Xiaoxin Shen、Jiali Wang 等 9 位作者2026-08-17Small Methods

ABSTRACT Incorporating high‐density mesoporosity into single crystals has long posed a fundamental challenge, as traditional pore‐engineering methods inevitably impair long‐range crystalline order. Here, we repurpose an inherent crystallographic defect—the Jahn–Teller distortion (JTD)—as a programmable tool for encodi…

Zeolite Catalysis and SynthesisMesoporous Materials and CatalysisMetal-Organic Frameworks: Synthesis and Applications

Hybrid RSM-ANFIS modeling for concurrent optimization of fused filament fabrication and graphene content in high-performance PLA nanocomposites

Akash Ahlawat、Ashish Phogat、Upender Punia 等 6 位作者2026-08-17Journal of Composite Materials

Fused Filament Fabrication (FFF) offers unparalleled geometric complexity but faces significant challenges in achieving optimal mechanical performance and part accuracy in advanced nanocomposites. This study introduces a comprehensive approach to concurrently optimize both the material composition (Graphene concentrat…

Polymer crystallization and propertiesAdditive Manufacturing and 3D Printing TechnologiesFiber-reinforced polymer composites

Smart Polymeric Wound Dressings for Wound Treatment: Contributions and Applications

Eduard-Gabriel Constantin、Mădălina Georgiana Albu Kaya、Cristina‐Elena Dinu‐Pîrvu 等 7 位作者2026-08-17International Journal of Molecular Sciences

Wound management continues to represent a major global healthcare challenge, with the wound care market growing each year and a rising incidence of chronic wounds worldwide. Effective wound healing requires dressings that protect injured tissue, prevent infection, and actively modulate the wound microenvironment to pr…

Hydrogels: synthesis, properties, applicationsWound Healing and TreatmentsPolymer Surface Interaction Studies

Highly Thermally Stable and Efficient Ru/ MAFO Catalysts for Glucose Hydrogenolysis to 1,2‐Propylene Glycol

Qingsong Wang、Xin Wang、Yunkai Zhou 等 6 位作者2026-08-17GCB Bioenergy

ABSTRACT The catalytic hydrogenolysis of glucose to produce 1,2‐propylene glycol (1,2‐PG) has opened promising avenues for sustainable chemical production. However, traditional Ru‐based catalysts suffer from issues such as high metal loading, poor dispersion, and a tendency to agglomerate under harsh conditions, leadi…

Catalysts for Methane ReformingCatalysis for Biomass ConversionLayered Double Hydroxides Synthesis and Applications

Ultrathin 2D Multivariate Hydrogen‐Bonded Organic Framework Nanosheets for Fluorescent DNA Sensing

Xiaoping Zhan、Qi Yin、Jin-Ying Qin 等 10 位作者2026-08-17Advanced Materials

The multivariate strategy is generally incompatible with densely packed structures, as this approach typically requires porous frameworks to manage the steric demands of incorporated functional groups. Without sufficient free volume, the frameworks are prone to structural transformations driven by steric hindrance. He…

Luminescence and Fluorescent MaterialsMetal-Organic Frameworks: Synthesis and ApplicationsCovalent Organic Framework Applications